Symmetric Encryption Scheme Based on Quasigroup Using Chained Mode of Operation

Fuente: arXiv
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Hauptverfasser: Kumar, Satish, Singh, Harshdeep, Gupta, Indivar, Gupta, Ashok Ji
Format: Preprint
Veröffentlicht: 2024
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author Kumar, Satish
Singh, Harshdeep
Gupta, Indivar
Gupta, Ashok Ji
author_facet Kumar, Satish
Singh, Harshdeep
Gupta, Indivar
Gupta, Ashok Ji
contents In this paper, we propose a novel construction for a symmetric encryption scheme, referred as SEBQ which is based on the structure of quasigroup. We utilize concepts of chaining like mode of operation and present a block cipher with in-built properties. We prove that SEBQ shows resistance against chosen plaintext attack (CPA) and by applying unbalanced Feistel transformation [19], it achieves security against chosen ciphertext attacks (CCA). Subsequently, we conduct an assessment of the randomness of the proposed scheme by running the NIST test suite and we analyze the impact of the initial vector, secret key and plaintext on ciphertext through an avalanche effect analysis. We also compare the results with existing schemes based on quasigroups [11,46]. Moreover, we analyze the computational complexity in terms of number of operations needed for encryption and decryption process.
format Preprint
id arxiv_https___arxiv_org_abs_2408_04490
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Symmetric Encryption Scheme Based on Quasigroup Using Chained Mode of Operation
Kumar, Satish
Singh, Harshdeep
Gupta, Indivar
Gupta, Ashok Ji
Cryptography and Security
Group Theory
20N05, 05B15, 94A60, 68W20
In this paper, we propose a novel construction for a symmetric encryption scheme, referred as SEBQ which is based on the structure of quasigroup. We utilize concepts of chaining like mode of operation and present a block cipher with in-built properties. We prove that SEBQ shows resistance against chosen plaintext attack (CPA) and by applying unbalanced Feistel transformation [19], it achieves security against chosen ciphertext attacks (CCA). Subsequently, we conduct an assessment of the randomness of the proposed scheme by running the NIST test suite and we analyze the impact of the initial vector, secret key and plaintext on ciphertext through an avalanche effect analysis. We also compare the results with existing schemes based on quasigroups [11,46]. Moreover, we analyze the computational complexity in terms of number of operations needed for encryption and decryption process.
title Symmetric Encryption Scheme Based on Quasigroup Using Chained Mode of Operation
topic Cryptography and Security
Group Theory
20N05, 05B15, 94A60, 68W20
url https://arxiv.org/abs/2408.04490